对称(几何)
凝聚态物理
物理
能斯特方程
铁磁性
能斯特效应
磁性
霍尔效应
自旋(空气动力学)
磁化
量子力学
磁场
热力学
几何学
电极
数学
作者
Zhengxuan Wang,Ruqian Wu,Chunlan Ma,Shijing Gong,Chuanxi Zhao,Shuaikang Zhang,Guangtao Wang,Tianxing Wang,Yipeng An
标识
DOI:10.1088/0256-307x/42/8/080705
摘要
Abstract Altermagnetism, a recently identified class of collinear magnetism, combines key features of antiferromagnets and ferromagnets. Despite having zero net magnetization, altermagnetic materials exhibit anomalous transport effects, including the anomalous Hall, Nernst, and thermal Hall effects, as well as magneto-optical Kerr and Faraday effects. These phenomena, previously thought unique to ferromagnets, are dictated by symmetry, as confirmed by density functional theory (DFT) calculations. However, an effective model-based approach to verify these symmetry constraints remains unavailable. In this Letter, we construct a k · p model for d-wave altermagnets CuX 2 (X = F, Cl) using spin space group representations and apply it to calculate the anomalous Hall effect. The symmetry-imposed transport properties predicted by the model are in agreement with the DFT results, providing a foundation for further investigation into symmetry-restricted transport phenomena in altermagnetic materials.
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